Advanced gravitational-wave detectors that have made groundbreaking discoveries are Michelson interferometers with resonating optical cavities as their arms. As light travels at a finite speed, these cavities are optimal for enhancing signals at frequencies within the bandwidth, beyond which, however, a small amount of optical loss will significantly impact the high-frequency signals. We find an elegant interferometer configuration with an “L resonator” as the core, significantly surpassing the loss-limited sensitivity of dual-recycled Fabry-Perot-Michelson interferometers at high frequencies. Following this concept, we provide a broadband design of a 25-km detector with outstanding sensitivity between 2 and 4 kHz. We perform Monte Carlo po...
We present an improved search for binary compact-object mergers using a network of ground-based grav...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
The recent detection of a neutron star binary through gravitational waves, GW170817, has offered ano...
Advanced gravitational-wave detectors that have made groundbreaking discoveries are Michelson interf...
The physics of neutron stars can be studied with gravitational waves emitted from coalescing binary ...
The gravitational waveform of merging binary neutron stars encodes information about extreme states ...
Gravitational waves provide us with an extraordinary tool to study the matterinside neutron stars. I...
Gravitational waves produced at kilohertz frequencies in the aftermath of a neutron star collision c...
Gravitational wave astronomy has established its role in measuring the equation of state governing c...
Gravitational waves from coalescing neutron stars encode information about nuclear matter at extreme...
Using optimal matched filtering, we search 25 hours of data from the LIGO 40-m prototype laser inter...
We present an improved search for binary compact-object mergers using a network of ground-based grav...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
The recent detection of a neutron star binary through gravitational waves, GW170817, has offered ano...
Advanced gravitational-wave detectors that have made groundbreaking discoveries are Michelson interf...
The physics of neutron stars can be studied with gravitational waves emitted from coalescing binary ...
The gravitational waveform of merging binary neutron stars encodes information about extreme states ...
Gravitational waves provide us with an extraordinary tool to study the matterinside neutron stars. I...
Gravitational waves produced at kilohertz frequencies in the aftermath of a neutron star collision c...
Gravitational wave astronomy has established its role in measuring the equation of state governing c...
Gravitational waves from coalescing neutron stars encode information about nuclear matter at extreme...
Using optimal matched filtering, we search 25 hours of data from the LIGO 40-m prototype laser inter...
We present an improved search for binary compact-object mergers using a network of ground-based grav...
The sensitivity of gravitational-wave detectors is limited in the high-frequency band by quantum sho...
The recent detection of a neutron star binary through gravitational waves, GW170817, has offered ano...